Time-dependent electron temperature diagnostics for high-power aluminum z-pinch plasmas
Author(s) -
T.W.L. Sanford,
T.J. Nash,
R.C. Mock
Publication year - 1996
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/374045
Subject(s) - plasma , z pinch , electron temperature , atomic physics , plasma diagnostics , electron , pinch , spectral line , core (optical fiber) , emissivity , physics , materials science , optics , nuclear physics , astronomy
Time-resolved x-ray pinhole photographs and time-integrated radially-resolved x-ray crystal-spectrometer measurements of azimuthally-symmetric aluminum-wire implosions suggest that the densest phase of the pinch is composed of a hot plasma core surrounded by a cooler plasma halo. The slope of the free-bound x-ray continuum, provides a time-resolved, model-independent diagnostic of the core electron temperature. A simultaneous measurement of the time-resolved K-shell line spectra provides the electron temperature of the spatially averaged plasma. Together, the two diagnostics support a 1-D Radiation-Hydrodynamic model prediction of a plasma whose thermalization on axis produces steep radial gradients in temperature, from temperatures in excess of a kilovolt in the core to below a kilovolt in the surrounding plasma halo
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